论文标题
相关驱动的近牌带石油弹力激发在kagome磁铁中
Correlation driven near-flat band Stoner excitations in a Kagome magnet
论文作者
论文摘要
在冷凝的物质系统中,Mott绝缘子表现出从电子相关性出现的各种特性。在巡回金属中,相关性通常很弱,但也可以通过对电子的几何限制来增强,这表现为“平坦”无分散电子带。在拓扑材料的快速发展领域(包括狄拉克和Weyl半法)中,平坦带是可能导致异常磁性和运输行为的重要组成部分之一。迄今为止,扁平带的表征及其磁性是稀缺的,阻碍了新型材料的设计。在这里,我们使用Resonant noconant Inostrastic X射线散射调查了铁磁KagomémemetalCo $ _3 $ sn $ _2 $ s $ _2 $。值得注意的是,观察到了几乎非分散的旋转激发峰,与传统的铁磁金属中预期的无特征石连续体形成鲜明对比。我们的频带结构和动态自旋敏感性计算以及激发的热演化确认了几乎非分散性的石器激发是相关性的独特签名和CO $ _3 $ sn $ _2 $ _2 $ _2 $ s $ s $ s $ _2 $的独特的旋转电子平面频带。这些观察结果是进一步探索拓扑材料中带诱导的对称性订单的基石。
Among condensed matter systems, Mott insulators exhibit diverse properties that emerge from electronic correlations. In itinerant metals, correlations are usually weak, but can also be enhanced via geometrical confinement of electrons, that manifest as `flat' dispersionless electronic bands. In the fast developing field of topological materials, which includes Dirac and Weyl semimetals, flat bands are one of the important components that can result in unusual magnetic and transport behaviour. To date, characterisation of flat bands and their magnetism is scarce, hindering the design of novel materials. Here, we investigate the ferromagnetic Kagomé semimetal Co$_3$Sn$_2$S$_2$ using resonant inelastic X-ray scattering. Remarkably, nearly non-dispersive Stoner spin excitation peaks are observed, sharply contrasting with the featureless Stoner continuum expected in conventional ferromagnetic metals. Our band structure and dynamic spin susceptibility calculations, and thermal evolution of the excitations, confirm the nearly non-dispersive Stoner excitations as unique signatures of correlations and spin-polarized electronic flat bands in Co$_3$Sn$_2$S$_2$. These observations serve as a cornerstone for further exploration of band-induced symmetry-breaking orders in topological materials.